Formation the properties of carbon black particles by gas-phase thermochemical modification Full article
Journal |
Inorganic Materials: Applied Research
ISSN: 2075-1133 , E-ISSN: 2075-115X |
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Output data | Year: 2019, Volume: 10, Number: 2, Pages: 480-495 Pages count : 16 DOI: 10.1134/S2075113319020370 | ||||
Tags | Carbon black, gas-phase thermochemical modification, electrical resistance, specific surface area, structural parameters, graphene | ||||
Authors |
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Affiliations |
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Funding (1)
1 | Ministry of Science and Higher Education of the Russian Federation | V.45.2.8 |
Abstract:
Formation the structural and functional properties of carbon black (CB) during the synthesis stage or through post-treatment is an important practical problem that will lead to the development of special types of this material, and those with superior electrical conductivity properties are of primary importance. This work is a continuation of our previous research and concerns the structure–property relationships that arise as a result of applying basic process techniques. Done and studied the effects of gas-phase thermochemical modification (thermal oxidation and thermal modification at temperature up to 3000°C) and its technological parameters on the characteristics of microstructure, texture, and surface chemistry of CB particles and the relationships between these parameters and electrical physical properties of CB powders. We study the effect that the combined treatment—thermal treatment at 3000°C followed by gas-steam activation at 900°C—has on CB powders. For the prepared CB powders, we use an array of different characterization techniques to establish the relationship between the structure and microstructure, on the hand, and the electrical conductivity, on the other hand: X-ray diffraction analysis, Raman spectroscopy, electron paramagnetic resonance, high-resolution transmission electron microscopy, and low-temperature nitrogen adsorption. The bulk electrical resistance is measured on samples prepared by compression of CB nanopowders under a pressure as high as 200 atm. We carry out a comprehensive characterization of the particle structure for different types of CB and compare them to commercial conducting types of CB of both domestic and foreign origin.
The observed effects are interpreted in terms of ideal crystalline carbon systems (i.e., graphenes), which have been in spotlight of both fundamental and applied research in the past years.
Cite:
Surovikin Y.V.
, Shaitanov A.G.
, Rezanov I.V.
, Syrieva A.V.
Formation the properties of carbon black particles by gas-phase thermochemical modification
Inorganic Materials: Applied Research. 2019. V.10. N2. P.480-495. DOI: 10.1134/S2075113319020370 Scopus РИНЦ OpenAlex
Formation the properties of carbon black particles by gas-phase thermochemical modification
Inorganic Materials: Applied Research. 2019. V.10. N2. P.480-495. DOI: 10.1134/S2075113319020370 Scopus РИНЦ OpenAlex
Original:
Суровикин Ю.В.
, Шайтанов А.Г.
, Резанов И.В.
, Сырьева А.В.
Формирование свойств частиц технического углерода в условиях термогазохимической модификации
Перспективные материалы. 2018. №12. С.53-73. DOI: 10.30791/1028-978X-2018-12-53-73 РИНЦ OpenAlex
Формирование свойств частиц технического углерода в условиях термогазохимической модификации
Перспективные материалы. 2018. №12. С.53-73. DOI: 10.30791/1028-978X-2018-12-53-73 РИНЦ OpenAlex
Dates:
Submitted: | Sep 7, 2018 |
Accepted: | Oct 16, 2018 |
Published print: | Mar 1, 2019 |
Published online: | May 21, 2019 |
Identifiers:
Scopus: | 2-s2.0-85066119535 |
Elibrary: | 41621413 |
OpenAlex: | W2945703698 |